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Derivación de εo y μo a partir de los principios fundamentales y definición del conjunto fundamental de las ecuaciones electromagnéticas

Author:

Michaud, André

Category:

Research Papers

Sub-Category:

Mechanics / Electrodynamics

Language:

Spanish

Date Published:

December 12, 2017

Downloads:

44

Keywords:

Permitividad, permeabilidad, principios primeros, velocidad de la luz, ecuaciones de Maxwell, ecuación de Lorentz, dimensiones electromagnéticas Cms fundamentales

Abstract:

En 1941, el famoso físico Julius Adams Stratton escribía en su obra seminal "Electromagnetic Theory": "En la teoría del electromagnetismo, las dimensiones de eps_o y mu_o que vinculan respectivamente D y E, y B y H en el vacío, son perfectamente arbitrarios. " Esta aserción siempre es válida en nuestros días en el contexto de la electrodinámica clásica, ya que estas dos constantes jamás fueron derivadas de los primeros principios. Será demostrado aquí que las dimensiones de ambas constantes no son arbitrarias y que ambas constantes pueden ser derivadas de los primeros principios.

Comments

Egregio Sosa(caba, Argentina):
Eso aparece dentro de un documento titulado: James Clerk Maxwell conocimiento prohibido. Aparece en vixra y em
n monografias.com

Posted: March 04, 2018 @ 8:06:17 am
Egregio Sosa(caba, Argentina):
Eso aparece dentro de un documento titulado: James Clerk Maxwell conocimiento prohibido. Aparece en vixra y em
n monografias.com

Posted: March 04, 2018 @ 8:04:53 am
Egregio Sosa(caba, Argentina):
Basar sobre principios fisicos ambas constantes es una necesidad fundamental y felicito vuestra labor. La propagacion electromagnetica posee inductancia propia, que en el vacio es igual a (mu_0 . lambda)/2 pi . Esa inductancia determina el tamaño finito del frente de onda elemental que, a su vez, determina un volumen finito en el intervalo de un ciclo espacial completo, es decir en una longitud de onda. Es el volumen del foton. La configuracion correspondiente a ese volumen posee capacitancia, cuyo valor es: (epsilon_0 . lambda) / 2 pi . El foton se comporta como un sistema resonante LC. No transporta carga alguna, es decir no transporta un par de cargas sin masa iguales y opuestas. El vacio crea el par de cargas necesario para tener energia en el campo electrico, que tiene las propiedades de la energia de un capacitor. En cada punto del vacio la densidad de carga varia senoidalmente, entre un valor pico negativo y un valor pico positivo. La carga realmente no se mueve. Es creada y variada localmente en cada punto del espacio.

Posted: March 04, 2018 @ 7:56:53 am

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